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首页> 外文期刊>Physics of atomic nuclei >Planned Destruction of Metal-Core Reactor: Simulation of Catastrophic Accidents and New Experimental Possibilities
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Planned Destruction of Metal-Core Reactor: Simulation of Catastrophic Accidents and New Experimental Possibilities

机译:计划破坏金属核心反应堆:灾难性事故的模拟和新的实验可能性

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摘要

A reactor with a destructible core (RIR reactor) generating a pulse with an output of similar to 1.5 x 10(19) fissions and a full width at half maximum of similar to 2.5 mu s was developed and tested at VNIIEF. In the course of investigation, a computational-experimental method for laboratory calibration of the reactor was created and worked out. This method ensures a high accuracy of predicting the energy release in a real experiment with excess reactivity of similar to 3 beta(eff) above prompt criticality. A transportable explosion-proof chamber was also developed, which ensures the safe localization of explosion products of the core of small-sized nuclear devices and charges of high explosives with equivalent mass of up to 100 kg of TNT.
机译:一种具有可破坏性核心(RIR反应器)的反应器,产生具有类似于1.5×10(19)次裂缝的脉冲和全宽度,在vniiefieieaie下开发并测试了与2.5μs相似的一半。 在调查过程中,创建并制备了反应器的实验室校准的计算实验方法。 该方法确保了高精度,可以在实际实验中预测能量释放,其具有与上述3β(EFF)类似的反应性的实验中的过度反应性。 还开发了一种可运输的防爆室,确保了小尺寸核设备的核心爆炸产品的安全定位,以及高达100kg TNT的等效质量的高爆炸物的电荷。

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